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氧化1-甲基十二烷基二甲基铵和二溴化N,N-双(十二烷基二甲基)-1,2-乙二铵对蜡样芽孢杆菌芽孢的抑制作用

Inhibitory effect of 1-methyldodecyldimethylamine oxide and N,N-bis(dodecyldimethyl)-1,2-ethanediammonium dibromide on the spores of Bacillus cereus.

作者信息

Cupková V, Vinter V, Devínsky F, Lacko I, Mlynarcík D

机构信息

Department of Biochemistry and Microbiology, Pharmaceutical Faculty, Comenius University, Bratislava, Czechoslovakia.

出版信息

Folia Microbiol (Praha). 1988;33(6):433-9. doi: 10.1007/BF02925767.

Abstract

1-Methyldodecyldimethylamine oxide (MDDO) and N,N'-bis(dodecyldimethyl)-1,2-ethanediammonium dibromide (BDED) exhibit a significant affinity for the surface of Bacillus cereus spores and adsorb very rapidly to the cells; they have a pronounced inhibitory effect on spore outgrowth. In order to alter the affinity of the spore surface for these inhibitors, the spores were pretreated with sodium dodecyl sulfate (SDS), and with an electronegative (Tween 80) and electropositive (histone) compound. In SDS-pretreated spores the inhibitory effect of MDDO and BDED was abolished to a considerable extent. Whereas the development of intact spores was inhibited already after germination, in SDS-pretreated spores the postgermination development continued but was not completed. In Tween 80-pretreated spores the addition of BDED led only to a retardation of outgrowth and division; BDED added only during the division stage interrupted further development completely. Histone-pretreated spores stopped their development instantaneously after the addition of BDED at any phase of the postgermination development. The possible mechanisms of the interaction of the compounds used with spore surface or rather with the state of its structures are discussed.

摘要

1-甲基十二烷基二甲基氧化胺(MDDO)和N,N'-双(十二烷基二甲基)-1,2-乙二铵二溴化物(BDED)对蜡样芽孢杆菌孢子表面具有显著亲和力,并能非常迅速地吸附到细胞上;它们对孢子萌发有明显的抑制作用。为了改变孢子表面对这些抑制剂的亲和力,用十二烷基硫酸钠(SDS)以及一种带负电的化合物(吐温80)和带正电的化合物(组蛋白)对孢子进行预处理。在经SDS预处理的孢子中,MDDO和BDED的抑制作用在很大程度上被消除。完整孢子在萌发后其发育就已受到抑制,而在经SDS预处理的孢子中,萌发后的发育仍在继续但未完成。在经吐温80预处理的孢子中,添加BDED仅导致萌发和分裂延迟;仅在分裂阶段添加BDED则会完全中断进一步发育。文中讨论了所用化合物与孢子表面相互作用,或者更确切地说是与孢子结构状态相互作用的可能机制。

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